The CO2 content of aqueous fluids in equilibrium with carbon can be used to retrieve their oxygen fugacity if pressure and temperature are known. Applicable to both natural and experimental systems, we present a new oxybarometer based on the aqueous concentration of CO2 in fluids saturated with either graphite or glass-like carbon, suitable to retrieve their oxygen fugacity. The method was experimentally tested by measuring by mass spectrometry the CO2 content in aqueous fluids coexisting with glass-like carbon buffered externally with Ni-NiO, employing ordered and disordered forms of NiO characterised by small differences in free energy (<5 kJ/mol). Considering analytical uncertainties on CO2 measurements, fO2 values can be resolved with an accuracy of about 0.01 log units, which is one order of magnitude lower than uncertainties affecting conventional solid state redox sensors. The CO2- in-fluid oxybarometer is the first available parameterisation of the fO2 dependency on pressure, temperature and CO2 content of aqueous fluids and can be used for fluids containing >1 mol. % CO2 beneath the graphite-diamond transition.

Aqueous concentration of CO2 in carbon-saturated fluids as a highly sensitive oxybarometer / F. Miozzi, S. Tumiati. - In: GEOCHEMICAL PERSPECTIVES LETTERS. - ISSN 2410-3403. - 16(2020), pp. 30-34.

Aqueous concentration of CO2 in carbon-saturated fluids as a highly sensitive oxybarometer

S. Tumiati
Secondo
2020

Abstract

The CO2 content of aqueous fluids in equilibrium with carbon can be used to retrieve their oxygen fugacity if pressure and temperature are known. Applicable to both natural and experimental systems, we present a new oxybarometer based on the aqueous concentration of CO2 in fluids saturated with either graphite or glass-like carbon, suitable to retrieve their oxygen fugacity. The method was experimentally tested by measuring by mass spectrometry the CO2 content in aqueous fluids coexisting with glass-like carbon buffered externally with Ni-NiO, employing ordered and disordered forms of NiO characterised by small differences in free energy (<5 kJ/mol). Considering analytical uncertainties on CO2 measurements, fO2 values can be resolved with an accuracy of about 0.01 log units, which is one order of magnitude lower than uncertainties affecting conventional solid state redox sensors. The CO2- in-fluid oxybarometer is the first available parameterisation of the fO2 dependency on pressure, temperature and CO2 content of aqueous fluids and can be used for fluids containing >1 mol. % CO2 beneath the graphite-diamond transition.
No
English
Settore GEO/07 - Petrologia e Petrografia
Articolo
Esperti anonimi
Ricerca di base
Pubblicazione scientifica
   The Dynamic Mass Transfer from Slabs to Arcs (Dynastar)
   Dynastar
   MINISTERO DELL'ISTRUZIONE E DEL MERITO
   2017ZE49E7_002
2020
European Association of Geochemistry
16
30
34
5
Pubblicato
Periodico con rilevanza internazionale
crossref
Aderisco
info:eu-repo/semantics/article
Aqueous concentration of CO2 in carbon-saturated fluids as a highly sensitive oxybarometer / F. Miozzi, S. Tumiati. - In: GEOCHEMICAL PERSPECTIVES LETTERS. - ISSN 2410-3403. - 16(2020), pp. 30-34.
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262
Article (author)
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F. Miozzi, S. Tumiati
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/802056
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